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A telomere-to-telomere map of somatic mutation burden and functional impact in cancer

Sohn, M.-H.; Dubocanin, D.; Vollger, M. R.; Kwon, Y.; Minkina, A.; Munson, K. M.; Hart, S. F.; Ranchalis, J. E.; Parmalee, N. L.; Sedeno-Cortes, A. E.; Ou, J.; Au, N. Y.; Bohaczuk, S.; Carroll, B.; Frazar, C. D.; Harvey, W. T.; Hoekzema, K.; Huang, M.-F.; Jacques, C. N.; Jensen, D. M.; Kolar, J. T.; Lee, R.; Lin, J.; Loy, K.; Mack, T.; Mao, Y.; Pham, M. M.; Ryke, E.; Smith, J. D.; Sutherlin, L.; Swanson, E. G.; Weiss, J. M.; SMaHT Assembly Working Group, ; Carvalho, C.; Coorens, T. H.; Harris, K.; Wei, C.-L.; Eichler, E. E.; Altemose, N.; Bennett, J. T.; Stergachis, A. B.

2025-10-13 genomics
10.1101/2025.10.10.681725 bioRxiv
Show abstract

Oncogenesis involves widespread genetic and epigenetic alterations, yet the full spectrum of somatic variation genome-wide remains unresolved. We generated a near-telomere-to-telomere (T2T) diploid assembly of a donor paired with deep short- and long-read sequencing of their melanoma. This revealed that 16% of somatic variants occur in sequences absent from GRCh38, with satellite repeats acting as hotspots for UV-induced damage due to sequence-intrinsic mutability and inefficient repair. Centromere kinetochore domains emerged as focal sites of structural, genetic, and epigenetic variation, leading to remodeling of centromere kinetochore binding domains during tumor evolution. Single-molecule telomere reconstructions uncovered cycles of attrition, deletion, and telomerase-mediated extension that shape cancer telomeres. Finally, diploid chromatin maps exposed that copy number alterations and epimutations, rather than point mutations, predominate in rewiring cancer regulatory programs. These findings define the full landscape of a cancers somatic variation and their functional impact, establishing a blueprint for T2T studies of mosaicism.

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